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Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation

Cystathionine γ lyase (CSE) is the major source of hydrogen sulfide-derived species (H(2)S(n)) in endothelial cells and plays an important role in protecting against atherosclerosis. Here we investigated the molecular mechanisms underlying the regulation of CSE expression in endothelial cells by flu...

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Autores principales: Bibli, Sofia-Iris, Hu, Jiong, Leisegang, Matthias S., Wittig, Janina, Zukunft, Sven, Kapasakalidi, Andrea, Fisslthaler, Beate, Tsilimigras, Diamantis, Zografos, Georgios, Filis, Konstantinos, Brandes, Ralf P., Papapetropoulos, Andreas, Sigala, Fragiska, Fleming, Ingrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6880097/
https://www.ncbi.nlm.nih.gov/pubmed/31759247
http://dx.doi.org/10.1016/j.redox.2019.101379
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author Bibli, Sofia-Iris
Hu, Jiong
Leisegang, Matthias S.
Wittig, Janina
Zukunft, Sven
Kapasakalidi, Andrea
Fisslthaler, Beate
Tsilimigras, Diamantis
Zografos, Georgios
Filis, Konstantinos
Brandes, Ralf P.
Papapetropoulos, Andreas
Sigala, Fragiska
Fleming, Ingrid
author_facet Bibli, Sofia-Iris
Hu, Jiong
Leisegang, Matthias S.
Wittig, Janina
Zukunft, Sven
Kapasakalidi, Andrea
Fisslthaler, Beate
Tsilimigras, Diamantis
Zografos, Georgios
Filis, Konstantinos
Brandes, Ralf P.
Papapetropoulos, Andreas
Sigala, Fragiska
Fleming, Ingrid
author_sort Bibli, Sofia-Iris
collection PubMed
description Cystathionine γ lyase (CSE) is the major source of hydrogen sulfide-derived species (H(2)S(n)) in endothelial cells and plays an important role in protecting against atherosclerosis. Here we investigated the molecular mechanisms underlying the regulation of CSE expression in endothelial cells by fluid shear stress/flow. Fluid shear stress decreased CSE expression in human and murine endothelial cells and was negatively correlated with the transcription factor Krüppel-like factor (KLF) 2. CSE was identified as a direct target of the KLF2-regulated microRNA, miR-27b and high expression of CSE in native human plaque-derived endothelial cells, was also inversely correlated with KLF2 and miR-27b levels. One consequence of decreased CSE expression was the loss of Prx6 sulfhydration (on Cys47), which resulted in Prx6 hyperoxidation, decamerization and inhibition, as well as a concomitant increase in endothelial cell reactive oxygen species and lipid membrane peroxidation. H(2)S(n) supplementation in vitro was able to reverse the redox state of Prx6. Statin therapy, which is known to activate KLF2, also decreased CSE expression but increased CSE activity by preventing its phosphorylation on Ser377. As a result, the sulfhydration of Prx6 was partially restored in samples from plaque containing arteries from statin-treated donors. Taken together, the regulation of CSE expression by shear stress/disturbed flow is dependent on KLF2 and miR-27b. Moreover, in murine and human arteries CSE acts to maintain endothelial redox balance at least partly by targeting Prx6 to prevent its decamerization and inhibition of its peroxidase activity.
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spelling pubmed-68800972019-11-29 Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation Bibli, Sofia-Iris Hu, Jiong Leisegang, Matthias S. Wittig, Janina Zukunft, Sven Kapasakalidi, Andrea Fisslthaler, Beate Tsilimigras, Diamantis Zografos, Georgios Filis, Konstantinos Brandes, Ralf P. Papapetropoulos, Andreas Sigala, Fragiska Fleming, Ingrid Redox Biol Research Paper Cystathionine γ lyase (CSE) is the major source of hydrogen sulfide-derived species (H(2)S(n)) in endothelial cells and plays an important role in protecting against atherosclerosis. Here we investigated the molecular mechanisms underlying the regulation of CSE expression in endothelial cells by fluid shear stress/flow. Fluid shear stress decreased CSE expression in human and murine endothelial cells and was negatively correlated with the transcription factor Krüppel-like factor (KLF) 2. CSE was identified as a direct target of the KLF2-regulated microRNA, miR-27b and high expression of CSE in native human plaque-derived endothelial cells, was also inversely correlated with KLF2 and miR-27b levels. One consequence of decreased CSE expression was the loss of Prx6 sulfhydration (on Cys47), which resulted in Prx6 hyperoxidation, decamerization and inhibition, as well as a concomitant increase in endothelial cell reactive oxygen species and lipid membrane peroxidation. H(2)S(n) supplementation in vitro was able to reverse the redox state of Prx6. Statin therapy, which is known to activate KLF2, also decreased CSE expression but increased CSE activity by preventing its phosphorylation on Ser377. As a result, the sulfhydration of Prx6 was partially restored in samples from plaque containing arteries from statin-treated donors. Taken together, the regulation of CSE expression by shear stress/disturbed flow is dependent on KLF2 and miR-27b. Moreover, in murine and human arteries CSE acts to maintain endothelial redox balance at least partly by targeting Prx6 to prevent its decamerization and inhibition of its peroxidase activity. Elsevier 2019-11-13 /pmc/articles/PMC6880097/ /pubmed/31759247 http://dx.doi.org/10.1016/j.redox.2019.101379 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Bibli, Sofia-Iris
Hu, Jiong
Leisegang, Matthias S.
Wittig, Janina
Zukunft, Sven
Kapasakalidi, Andrea
Fisslthaler, Beate
Tsilimigras, Diamantis
Zografos, Georgios
Filis, Konstantinos
Brandes, Ralf P.
Papapetropoulos, Andreas
Sigala, Fragiska
Fleming, Ingrid
Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title_full Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title_fullStr Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title_full_unstemmed Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title_short Shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
title_sort shear stress regulates cystathionine γ lyase expression to preserve endothelial redox balance and reduce membrane lipid peroxidation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6880097/
https://www.ncbi.nlm.nih.gov/pubmed/31759247
http://dx.doi.org/10.1016/j.redox.2019.101379
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